Selinexor Enhances Natural Killer Cell Function Against Multiple Myeloma Cells

Introduction: Natural killer (NK) cells are innate immune effector cells which can mediate antibody dependent cellular cytotoxicity (ADCC) and lyse cancer cells. Harnessing NK cell function against multiple myeloma (MM) is of high interest and multiple strategies are currently under development. Exp...

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Veröffentlicht in:Blood 2023-11, Vol.142 (Supplement 1), p.6599-6599
Hauptverfasser: Fisher, Jack G, Doyle, Amber DP, Graham, Lara V, Forconi, Francesco, Cragg, Mark S, Walker, Christopher J, Khakoo, Salim I, Blunt, Matthew D
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Sprache:eng
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Zusammenfassung:Introduction: Natural killer (NK) cells are innate immune effector cells which can mediate antibody dependent cellular cytotoxicity (ADCC) and lyse cancer cells. Harnessing NK cell function against multiple myeloma (MM) is of high interest and multiple strategies are currently under development. Exportin-1 (XPO1) is a nuclear export protein which inhibits the function of tumour suppressor proteins and facilitates oncogene mRNA translation. Selinexor is a first-in-class XPO1 inhibitor approved for the treatment of relapsed or refractory MM that induces cancer cell apoptosis. In addition, selinexor has recently been shown to promote NK cell cytotoxicity against B cell lymphoma cells. This study aimed to determine whether selinexor augments NK cell activation against MM cells both alone, and in combination with the anti-CD38 antibody daratumumab. Methods: A panel of MM cell lines (MM.1S, U266 and RPMI-8226) were incubated with clinically relevant concentrations of selinexor for 24 hours, then either assessed for expression of ligands for NK cell receptors (KIR, NKG2A, NKG2D and NKp46), or co-cultured with primary human NK cells ± daratumumab. Following co-culture, NK-mediated lysis of MM cells was assessed by propidium iodide staining and NK cell degranulation assessed by CD107a expression. Results: Selinexor pre-treatment of MM cells significantly increased NK cell degranulation (p
ISSN:0006-4971
1528-0020
DOI:10.1182/blood-2023-179744